Paper
28 August 2023 A voxel-based PBD model for simulating nasal polyp deformation and application in endoscopic surgery simulation system
Haoran Huang, Jiaxi Jiang, Yiping Jiang, Jingfan Fan, Jian Yang
Author Affiliations +
Proceedings Volume 12724, Second International Conference on Biomedical and Intelligent Systems (IC-BIS 2023); 127242I (2023) https://doi.org/10.1117/12.2687427
Event: Second International Conference on Biomedical and Intelligent Systems (IC-BIS2023), 2023, Xiamen, China
Abstract
In this study, we developed a nasal endoscopy simulation system based on Unity to be used for training novice doctors. The nasal cavity and internal structures were segmented from high-resolution CT images of patients, and mesh models were generated. To address model penetration between surgical tools and the nasal cavity model, we proposed a collision detection method based on motion trend prediction. By predicting potential collisions based on motion trends and performing corresponding preprocessing, we were able to prevent model penetration. The deformation of soft tissue structures within the nasal cavity was achieved by using a voxel-based PBD model. By voxelizing the mesh model and adding PBD constraints to the voxelized model, we achieved synchronous deformation between the mesh and voxelized models through coupling. For haptic rendering, two Phantom Omni devices were used to operate endoscopes and other surgical tools while providing force feedback. Experimental results showed that our system can provide realistic nasal endoscopy scenarios and effectively assist doctors in surgical training.
© (2023) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Haoran Huang, Jiaxi Jiang, Yiping Jiang, Jingfan Fan, and Jian Yang "A voxel-based PBD model for simulating nasal polyp deformation and application in endoscopic surgery simulation system", Proc. SPIE 12724, Second International Conference on Biomedical and Intelligent Systems (IC-BIS 2023), 127242I (28 August 2023); https://doi.org/10.1117/12.2687427
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KEYWORDS
Haptic technology

Deformation

Voxels

Motion models

Particles

3D modeling

Surgery

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